The Principles of Chemistry, Volume IMendeleyev, Dmitry Ivanovich
Science
The Principles of Chemistry, Volume I
Mendeleyev, Dmitry Ivanovich
Argon; Chemistry; Periodic law
[56] At the present time a view is very generally accepted, which
regards supersaturated solutions as homogeneous systems, which
pass into heterogeneous systems (composed of a liquid and a
solid substance), in all respects exactly resembling the passage
of water cooled below its freezing point into ice and water,
or the passage of crystals of rhombic sulphur into monoclinic
crystals, and of the monoclinic crystals into rhombic. Although
many phenomena of supersaturation are thus clearly understood,
yet the spontaneous formation of the unstable hepta-hydrated salt
(with 7H_{2}O), in the place of the more stable deca-hydrated
salt (with mol. 10H_{2}O), indicates a property of a saturated
solution of sodium sulphate which obliges one to admit that
it has a different structure from an ordinary solution.
Stcherbacheff asserts, on the basis of his researches, that
a solution of the deca-hydrated salt gives, on evaporation,
without the aid of heat, the deca-hydrated salt, whilst after
heating above 33° it forms a supersaturated solution and the
hepta-hydrated salt. But in order that this view should be
accepted, some facts must be discovered distinguishing solutions
(which are, according to this view, isomeric) containing the
hepta-hydrated salt from those containing the deca-hydrated
salt, and all efforts in this direction (the study of the
properties of the solutions) have given negative results. As
some crystallohydrates of salts (alums, sugar of lead, calcium
chloride) melt straightway (without separating out anything),
whilst others (like Na_{2}SO_{4},10H_{2}O) are broken up, then
it may be that the latter are only in a state of equilibrium at
a higher temperature than their melting point. It may here be
observed that in melting crystals of the deca-hydrated salt,
there is formed, besides the solid anhydrous salt, a saturated
solution giving the hepta-hydrated salt, so that this passage
from the deca-to the hepta-hydrated salt, and the reverse,
takes place with the formation of the anhydrous (or, it may be,
monohydrated) salt.
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